Vejnar Charles E, Moreno-Mateos Miguel A, Cifuentes Daniel, Bazzini Ariel A, Giraldez Antonio J
Department of Genetics, Yale University School of Medicine, New Haven, Connecticut 06510.
Department of Genetics, Yale University School of Medicine, New Haven, Connecticut 06510; Yale Stem Cell Center, Yale University School of Medicine, New Haven, Connecticut 06520.
Cold Spring Harb Protoc. 2016 Oct 3;2016(10):2016/10/pdb.prot086850. doi: 10.1101/pdb.prot086850.
This protocol describes how to generate and genotype mutants using an optimized CRISPR-Cas9 genome-editing system in zebrafish (CRISPRscan). Because single guide RNAs (sgRNAs) have variable efficiency when targeting specific loci, our protocol starts by explaining how to use the web tool CRISPRscan to design highly efficient sgRNAs. The CRISPRscan algorithm is based on the results of an integrated analysis of more than 1000 sgRNAs in zebrafish, which uncovered highly predictive factors that influence Cas9 activity. Next, we describe how to easily generate sgRNAs in vitro, which can then be injected in vivo to target specific loci. The use of highly efficient sgRNAs can lead to biallelic mutations in the injected embryos, causing lethality. We explain how targeting Cas9 to the germline increases viability by reducing somatic mutations. Finally, we combine two methods to identify F heterozygous fish carrying the desired mutations: (i) Mut-Seq, a method based on high-throughput sequencing to detect F founder fish; and (ii) a polymerase chain reaction-based fragment analysis method that identifies F heterozygous fish characterized by Mut-Seq. In summary, this protocol includes the steps to generate and characterize mutant zebrafish lines using the CRISPR-Cas9 genome engineering system.
本方案描述了如何使用优化的斑马鱼CRISPR-Cas9基因组编辑系统(CRISPRscan)生成突变体并进行基因分型。由于单向导RNA(sgRNA)靶向特定基因座时效率存在差异,我们的方案首先解释如何使用网络工具CRISPRscan设计高效的sgRNA。CRISPRscan算法基于对斑马鱼中1000多个sgRNA的综合分析结果,该分析揭示了影响Cas9活性的高度预测性因素。接下来,我们描述如何在体外轻松生成sgRNA,然后将其注射到体内以靶向特定基因座。使用高效的sgRNA可导致注射胚胎中的双等位基因突变,从而导致胚胎死亡。我们解释了将Cas9靶向生殖系如何通过减少体细胞突变来提高存活率。最后,我们结合两种方法来鉴定携带所需突变的F杂合子鱼:(i)Mut-Seq,一种基于高通量测序检测F奠基鱼的方法;(ii)一种基于聚合酶链反应的片段分析方法,用于鉴定以Mut-Seq为特征的F杂合子鱼。总之,本方案包括使用CRISPR-Cas9基因组工程系统生成和表征突变斑马鱼品系的步骤。